SN74AHC132BQAR

Texas Instruments
595-SN74AHC132BQAR
SN74AHC132BQAR

Mfr.:

Description:
Logic Gates 4-ch 4-input&nb sp;2-V to 5.5-V NAN

ECAD Model:
Download the free Library Loader to convert this file for your ECAD Tool. Learn more about the ECAD Model.

In Stock: 1.673

Stock:
1.673 Can Dispatch Immediately
Factory Lead Time:
6 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
Packaging:
Full Reel (Order in multiples of 3000)

Pricing (EUR)

Qty. Unit Price
Ext. Price
Cut Tape / MouseReel™
0,456 € 0,46 €
0,323 € 3,23 €
0,289 € 7,23 €
0,251 € 25,10 €
0,233 € 58,25 €
0,223 € 111,50 €
0,216 € 216,00 €
Full Reel (Order in multiples of 3000)
0,202 € 606,00 €
0,197 € 1.182,00 €
† A MouseReel™ fee of 5,00 € will be added and calculated in your basket. All MouseReel™ orders are non-cancellable and non-returnable.

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Logic Gates
RoHS:  
NAND
4 Gate
AHC
4 Input
WQFN-14
4 Output
8 mA
- 8 mA
2 V
5.5 V
- 40 C
+ 125 C
SMD/SMT
Reel
Cut Tape
MouseReel
Brand: Texas Instruments
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: CN
Output Voltage: 5.5 V
Product: Logic Gates
Product Type: Logic Gates
Series: SN74AHC132
Factory Pack Quantity: 3000
Subcategory: Logic ICs
Products found:
To show similar products, select at least one checkbox
Select at least one checkbox above to show similar products in this category.
Attributes selected: 0

This functionality requires JavaScript to be enabled.

TARIC:
8542319000
CAHTS:
8542390000
USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

SN7AHC132 4-Channel 4-Input NAND Gate

Texas Instruments SN7AHC132 4-Channel 4-Input NAND Gate is a quadruple positive-NAND gate designed for 2V to 5.5V VCC operation. This device performs the Boolean function Y = A × B or Y = A + B in positive logic. Schmitt-trigger inputs of the Texas Instruments SN7AHC132 provide added noise immunity and support for slow input signal transitions.